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首页> 外文期刊>Nucleic acids research >The association of late-acting snoRNPs with human pre-ribosomal complexes requires the RNA helicase DDX21
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The association of late-acting snoRNPs with human pre-ribosomal complexes requires the RNA helicase DDX21

机译:晚期snoRNPs与人类核糖体前复合物的关联需要RNA解旋酶DDX21

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Translation fidelity and efficiency require multiple ribosomal (r)RNA modifications that are mostly mediated by small nucleolar (sno)RNPs during ribosome production. Overlapping basepairing of snoRNAs with pre-rRNAs often necessitates sequential and efficient association and dissociation of the snoRNPs, however, how such hierarchy is established has remained unknown so far. Here, we identify several late-acting snoRNAs that bind pre-40S particles in human cells and show that their association and function in pre-40S complexes is regulated by the RNA helicase DDX21. We map DDX21 crosslinking sites on pre-rRNAs and show their overlap with the basepairing sites of the affected snoRNAs. While DDX21 activity is required for recruitment of the late-acting snoRNAs SNORD56 and SNORD68, earlier snoRNAs are not affected by DDX21 depletion. Together, these observations provide an understanding of the timing and ordered hierarchy of snoRNP action in pre-40S maturation and reveal a novel mode of regulation of snoRNP function by an RNA helicase in human cells.
机译:翻译保真度和效率需要核糖体(r)RNA修饰,这些修饰主要由核糖体生产过程中的小核仁(sno)RNP介导。 snoRNA与pre-rRNA的碱基配对重叠通常需要snoRNP的顺序有效结合和解离,但是,到目前为止,如何建立这种层次结构仍然未知。在这里,我们确定了几个在人细胞中结合pre-40S颗粒的snoRNAs,并显示它们在pre-40S复合物中的缔合和功能受RNA解旋酶DDX21调控。我们在pre-rRNAs上绘制DDX21交联位点,并显示它们与受影响的snoRNAs的碱基配对位点重叠。虽然招募后期作用的snoRNA SNORD56和SNORD68需要DDX21活性,但较早的snoRNA不受DDX21消耗的影响。总之,这些观察结果提供了对40s之前成熟中snoRNP作用的时机和有序层次的理解,并揭示了人类细胞中RNA解旋酶对snoRNP功能进行调节的新模式。

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